Enzyme Kinetics

Enzyme Kinetics
Author: Arthur R. Schulz
Publisher: Cambridge University Press
Total Pages: 264
Release: 1994-11-25
Genre: Medical
ISBN: 9780521449502

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This text covers the field of steady-state kinetics from basic principles to the control of the multi-enzyme systems which constitute metabolic pathways. Emphasis is placed on the interpretation of the kinetic behaviour of enzyme-catalyzed reactions in terms of mechanisms. Algorithms are developed which can be implemented in computer programs for the derivation of equations. The treatment of steady-state enzyme kinetics is extended to allosteric enzymes and subunit interactions in polymeric enzymes. Principles are presented which provide for mathematical analysis of the control of multi-enzyme systems. Problems are included at the end of each chapter and their solutions are found at the end of the book. This book will be a useful text for advanced undergraduates and graduate students taking courses in enzyme chemistry and enzyme kinetics.

Behavior of Enzyme Systems

Behavior of Enzyme Systems
Author: John M. Reiner
Publisher:
Total Pages: 378
Release: 1969
Genre: Enzymes
ISBN:

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Organic Chemistry of Enzyme-Catalyzed Reactions, Revised Edition

Organic Chemistry of Enzyme-Catalyzed Reactions, Revised Edition
Author: Richard B. Silverman
Publisher: Elsevier
Total Pages: 736
Release: 2002-03-07
Genre: Technology & Engineering
ISBN: 0080513360

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The Organic Chemistry of Enzyme-Catalyzed Reactions is not a book on enzymes, but rather a book on the general mechanisms involved in chemical reactions involving enzymes. An enzyme is a protein molecule in a plant or animal that causes specific reactions without itself being permanently altered or destroyed. This is a revised edition of a very successful book, which appeals to both academic and industrial markets. Illustrates the organic mechanism associated with each enzyme-catalyzed reaction Makes the connection between organic reaction mechanisms and enzyme mechanisms Compiles the latest information about molecular mechanisms of enzyme reactions Accompanied by clearly drawn structures, schemes, and figures Includes an extensive bibliography on enzyme mechanisms covering the last 30 years Explains how enzymes can accelerate the rates of chemical reactions with high specificity Provides approaches to the design of inhibitors of enzyme-catalyzed reactions Categorizes the cofactors that are appropriate for catalyzing different classes of reactions Shows how chemical enzyme models are used for mechanistic studies Describes catalytic antibody design and mechanism Includes problem sets and solutions for each chapter Written in an informal and didactic style

Multi-enzyme Systems

Multi-enzyme Systems
Author: Malcolm Dixon
Publisher: CUP Archive
Total Pages: 120
Release: 1949
Genre: Enzymes
ISBN:

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Enzyme Kinetics

Enzyme Kinetics
Author: Irwin H. Segel
Publisher:
Total Pages: 957
Release: 2014
Genre: Enzyme kinetics
ISBN: 9788126548156

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Principles of Enzyme Kinetics

Principles of Enzyme Kinetics
Author: Athel Cornish-Bowden
Publisher: Elsevier
Total Pages: 221
Release: 2014-05-20
Genre: Science
ISBN: 1483164675

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Principles of Enzyme Kinetics discusses the principles of enzyme kinetics at an intermediate level. It is primarily written for first-year research students in enzyme kinetics. The book is composed of 10 chapters. Chapter 1 provides the basic principles of enzyme kinetics with a brief discussion of dimensional analysis. Subsequent chapters cover topics on the essential characteristics of steady-state kinetics, temperature dependence, methods for deriving steady-state rate equations, and control of enzyme activity. Integrated rate equations, and introductions to the study of fast reactions and the statistical aspects of enzyme kinetics are provided as well. Chemists and biochemists will find the book invaluable.

Dynamic Analysis of Enzyme Systems

Dynamic Analysis of Enzyme Systems
Author: Katsuya Hayashi
Publisher: Springer
Total Pages: 392
Release: 1986-02
Genre: Medical
ISBN:

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This book is concerned with a quantitative analysis of dynamic behavior of various enzymatic reaction systems by computer simulation. The authors and coworkers have been engaged in cooperative research since 1975, seeking to clarify the catalytic and regulatory characteristics of enzymatic reactions in vivo and control mechanisms suitable for enzyme technology. Rather than "enzyme kinetics" generally known in enzymol· ogy, this research has employed an approach called "enzyme dynamics" which concentrates on the exact schematic representation of an actual reac tion mechanism, derivation of rate equation on the basis of the scheme, and computer simulation of its dynamic behavior (numerical solution of the rate equation and explanation of kinetic and regulatory properties of the enzymatic reaction). A rate equation representing the behavior of enzymatic reactions is gen erally expressed by a set of nonlinear differential equations. The analytic solution of rate equations is therefore impossible in general, making it necessary to introduce some approximations in order to analyze the exper· imental data in enzyme kinetics. For example, under an assumption of excess substrate against enzyme in a closed system, we commonly use the linear approximation for the early period of reaction, the quasi-steady state approximation based on putative maintenance of steady state in en zyme species, and the rapid-equilibrium approximation assuming instantane ous equilibration in complex formation and between complexes. The kinetic characteristics obtained by these approximations do not always reflect the dynamic behavior of actual enzymatic reactions.

Fundamentals of Enzyme Kinetics

Fundamentals of Enzyme Kinetics
Author: Athel Cornish-Bowden
Publisher: Elsevier
Total Pages: 245
Release: 2014-05-20
Genre: Science
ISBN: 1483161196

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Fundamentals of Enzyme Kinetics details the rate of reactions catalyzed by different enzymes and the effects of varying the conditions on them. The book includes the basic principles of chemical kinetics, especially the order of a reaction and its rate constraints. The text also gives an introduction to enzyme kinetics - the idea of an enzyme-substrate complex; the Michaelis-Menten equation; the steady state treatment; and the validity of its assumption. Practical considerations, the derivation of steady-state rate equations, inhibitors and activators, and two-substrate reactions are also explained. Problems after the end of each chapter have also been added, as well as their solutions at the end of the book, to test the readers' learning. The text is highly recommended for undergraduate students in biochemistry who wish to study about enzymes or focus completely on enzymology, as most of the mathematics used in this book, which have been explained in detail to remove most barriers of understanding, is elementary.